[12] W. Fischer. Run overview of the relativistic heavy ion collider.

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1 Bibliography [1] CTEQ Coll. Handbook on perturbative QCD. Rev. Mod. Phys., 67: , [2] J. Bjorken and S. Drell. Relativistic Quantum Mechanics. McGraw-Hill, [3] J. Cleymans, R. Gavai, and E. Suhonen. Quarks and gluons at high temperatures and densities. Phys. Rep., 130:217, [4] F. Karsch and E. Laermann. Thermodynamics and in-medium hadron properties from lattice qcd in Quark Gluon Plasma ed. R. Hwa, hep-lat/ [5] D. Rischke. The Quark-Gluon Plasma in equilibrium. Prog. Part. Nucl. Phys., 52: , [6] P. D. B. Collins and A. D. Martin. Hadron Interactions. Adam Hilger Ltd, [7] R. Glauber and G. Matthiae. High-energy scattering of protons by nuclei. Nucl. Phys., B21:135, [8] Xin-Nian Wang and Miklos Gyulassy. A systematic study of particle production in p+p ( p) collisions via the HIJING model. Phys. Rev. D, 45: , [9] H. Hahn et al. The RHIC design overview. Nucl. Instr. and Meth., A499: , [10] T. Ludlam. Overview of experiments and detectors at RHIC. Nucl. Instr. and Meth., A499: ,

2 114 BIBLIOGRAPHY [11] A. Franz. Five years of tracking heavy ion collisions at RHIC. Nucl. Instr. and Meth., A566, [12] W. Fischer. Run overview of the relativistic heavy ion collider. [13] J. Bjorken. Highly relativistic nucleus-nucleus collisions: The central rapidity region. Phys. Rev. D, 27: , [14] K. Adcox et al. Measurement of the mid-rapidity transverse energy distribution from s NN = 130 GeV Au + Au collisions at RHIC. Phys. Rev. Lett., 87(052301), [15] J. Adams et al. Evidence from d + Au measurements for final-state suppression of high-p T hadrons in Au + Au collisions at RHIC. Phys. Rev. Lett., 91(072304), [16] J. Cronin et al. Production of hadrons with large transverse momentum at 200 GeV, 300 GeV and 400 GeV. Phys. Rev. D, 11:3105, [17] J. Adams et al. Transverse momentum and collision energy dependence of high-p T hadron suppression in Au + Au collisions at ultrarelativistic energies. Phys. Rev. Lett., 91(172302), [18] K. Adcox et al. Suppression of hadrons with large transverse momentum in central Au + Au collisions at s NN = 130 GeV. Phys. Rev. Lett., 88(022301), [19] C. Adler et al. Centrality dependence of high-p T hadron suppression in Au + Au collisions at s NN = 130 GeV. Phys. Rev. Lett., 89(202301), [20] S. Adler et al. Absence of suppression in particle production at large transverse momentum in s NN = 200 GeV d + Au collisions. Phys. Rev. Lett., 91(072303), [21] J. Adams et al. Experimental and theoretical challenges in the search for the quark gluon plasma: The STAR collaboration s critical assessment of the evidence from RHIC collisions. Nucl. Phys., A757:102, [22] S. A. Voloshin. Aisotropic flow. Nucl. Phys., A715:379c, 2003.

3 BIBLIOGRAPHY 115 [23] D. Molnár and S. A. Voloshin. Elliptic flow at large transverse momenta from quark coalescence. Phys. Rev. Lett., 91(092301), [24] R. J. Fries, B. Müller, C. Nonaka, and S. A. Bass. Hadronization in heavyion collisions: Recombination and fragmentation of partons. Phys. Rev. Lett., 90(202303), [25] V. Greco, C. M. Ko, and P. Lévai. Parton coalescence and the antiproton/pion anomaly at RHIC. Phys. Rev. Lett., 90(202302), [26] Z. W. Lin and C. M. Ko. Flavor ordering of elliptic flows at high transverse momentum. Phys. Rev. Lett., 89(202302), [27] Z. W. Lin and D. Molnár. Quark coalescence and elliptic flow of charm hadrons. Phys. Rev. C, 68(044901), [28] J. Adams et al. Identified hadron spectra at large transverse momentum in p+p and d+au collisions at s NN = 200 GeV. Phys. Lett. B, 637: , [29] A. Mischke. Neutral pion production in d + Au collisions at s NN = 200 GeV. Eur. Phys. J., C43:311, [30] O. Grebenyuk, A. Mischke, and A. Stolpovsky. High transverse momentum inclusive neutral pion production in d + Au collisions at RHIC. Rom. Rep. Phys., 58:25 30, [31] J. Pumplin et al. New generation of parton distributions with uncertainties from global QCD analysis. J. High Energy Phys., 0207:012, [32] A. Martin, R. Roberts, W. Stirling, and R. Thorne. MRST2001: partons and α s from precise deep inelastic scattering and Tevatron jet data. Eur. Phys. J., C23:73 87, [33] B. Kniehl, G. Kramer, and B. Pötter. Testing the universality of fragmentation functions. Nucl. Phys., B852:514, [34] J. Binnewies, B. Kniehl, and G. Kramer. Pion and kaon production in e + e and ep collisions at next-to-leading order. Phys. Rev. D, 52:4947, [35] L. Bourhis, M. Fontannas, J. Guillet, and M. Werlen. Next-to-leading order determination of fragmentation functions. Eur. Phys. J., C19:89, 2001.

4 116 BIBLIOGRAPHY [36] S. Kretzer. Fragmentation functions from flavor-inclusive and flavor-tagged e + e annihilations. Phys. Rev. D, 62(054001), [37] K. Eskola, V. Kolhinen, and C. Salgado. The scale dependent nuclear effects in parton distributions for practical applications. Eur. Phys. J., C9:61 68, [38] D. de Florian and R. Sassot. Nuclear parton distributions at next to leading order. Phys. Rev. D, 69, [39] S. Y. Li and Xin-Nian Wang. Gluon shadowing and hadron production at rhic. Phys. Lett. B, 527:85, [40] Xin-Nian Wang. Private communication. [41] K. Ackermann et al. STAR detector overview. Nucl. Instr. and Meth., A499: , [42] K. Adcox et al. PHENIX detector overview. Nucl. Instr. and Meth., A499: , [43] B. Back et al. The PHOBOS detector at RHIC. Nucl. Instr. and Meth., A499: , [44] M. Adamczyk et al. The BRAHMS experiment at RHIC. Nucl. Instr. and Meth., A499: , [45] M. Beddo et al. The STAR barrel electromagnetic calorimeter. Nucl. Instr. and Meth., A499: , [46] C. Allgower et al. The STAR endcap electromagnetic calorimeter. Nucl. Instr. and Meth., A499: , [47] M. Anderson et al. The STAR time projection chamber: A unique tool for studying high multiplicity events at RHIC. Nucl. Instr. and Meth., A499: , [48] K. Ackermann et al. The Forward Time Projection Chamber (FTPC) in STAR. Nucl. Instr. and Meth., A499:713, [49] C. Adler et al. The RHIC Zero-Degree Calorimeters. Nucl. Instr. and Meth., A470:488, 2001.

5 BIBLIOGRAPHY 117 [50] M. Bai et al. RHIC beam instrumentation. Nucl. Instr. and Meth., A499, [51] J. Kiryluk. Relative luminosity measurement in STAR and implications for spin asymetry determination. AIP Conf. Proc., 675:424, [52] J. Kiryluk. Local polarimetry for proton beams with the STAR Beam Beam Counters. 16th International Spin Physics Symposium Proc., arxiv:hep-ex/ [53] S. Bennett et al. The EMC and SMD performance in 1997 testbeam run at BNL. Note 351, STAR, [54] J. Landgraf et al. An overview of the STAR DAQ system. Nucl. Instr. and Meth., A499: , [55] F. Bieser et al. The STAR trigger. Nucl. Instr. and Meth., A499: , [56] A. Drees and Z. Xu. Results from the luminosity scans during the RHIC 2000 run. Proceedings of the Particle Accelerator Conference, page 3120, [57] D. Liko. Track fitting in the STAR detector using the Kalman filter method. Note 87, STAR, [58] P. Yepes. A fast track pattern recognition. Nucl. Instr. and Meth., A380: , [59] R. Brun and F. Rademakers. ROOT an object oriented data analysis framework. Nucl. Instr. and Meth., A389:81 86, [60] A. Suaide. BEMC calibration in 2003 d + Au run. STAR, unpublished. [61] B. Abelev et al. Measurement of transverse single-spin asymmetries for dijet production in proton-proton collisions at s NN = 200 GeV. arxiv:hepex/ v1. [62] B. Choi. High p T inclusive charged hadron distributions in Au + Au collisions at s NN = 130 GeV at RHIC. PhD thesis, University of Texas, [63] D. Kharzeev, E. Levin, and M. Nardi. QCD saturation and deuteronnucleus collisions. Nucl. Phys., A730: , 2004.

6 118 BIBLIOGRAPHY [64] L. Hulthén and M. Sugawara. in Handbuch der Physik, volume 39. Springer- Verlag, Berlin, [65] M. Miller. Measurement of jets and jet quenching at RHIC. PhD thesis, Yale University, [66] Particle Data Group. Review of particle physics. Eur. Phys. J., 3, [67] R. Silver. An algorithm for the assignment problem. Comm. ACM, 3: , [68] CERN Program Library. [69] A. Stolpovsky. Neutral pion production at p + p and d + Au collisions at RHIC. PhD thesis, Wayne State University, [70] B. Abelev et al. Longitudinal double-spin asymmetry and cross section for inclusive jet production in polarized proton collisions at s NN = 200 GeV. Phys. Rev. Lett., 97(252001), [71] R. Brun, R. Hagelberg, M. Hansroul, and J. Lassalle. GEANT: Simulation program for particle physics experiments. user guide and reference manual. Technical Report CERN-DD-78-2-REV, CERN, [72] W. Vogelsang, Private communication. [73] F. Simon. Production of Λ hyperons at forward rapidity in d + Au collisions at s NN = 200 GeV. PhD thesis, Max-Planck-Institut für Physik, Munich, [74] J. Adams et al. Identified particle distributions in p + p and Au + Au collisions at s NN = 200 GeV. Phys. Rev. Lett., 92(112301), [75] B. Abelev et al. Rapidity and species dependence of particle production at large transverse momentum for d + Au collisions at s NN = 200 GeV. arxiv:nucl-ex/ [76] G. D. Lafferty and T. R. Wyatt. Where to stick your data points. Nucl. Instr. and Meth., A355: , [77] J. Adams et al. Pion, kaon, proton and anti-proton transverse momentum distributions from p + p and d + Au collisions at s NN = 200 GeV. Phys. Lett. B, 616:8, 2005.

7 BIBLIOGRAPHY 119 [78] S. Adler et al. Midrapidity neutral-pion production in proton-proton collisions at s NN = 200 GeV. Phys. Rev. Lett., 91(241803), [79] L. Frankfurt and M. Strikman. Diffraction at HERA, color opacity and nuclear shadowing in DIS off nuclei. Eur. Phys. J., A5:293, [80] L. Frankfurt, V. Guzey, M. McDermott, and M. Strikman. Nuclear shadowing in deep inelastic scattering on nuclei: leading twist versus eikonal approaches. J. High Energy Phys., 0202:027, [81] L. Frankfurt, V. Guzey, and M. Strikman. Leading twist nuclear shadowing: Uncertainties, comparison to experiments, and higher twist effects. Phys. Rev. D, 71(054001), arxiv: hep-ph/ [82] S. Adler et al. High transverse momentum η meson production in p+p, d+ Au and Au+Au collisions at s NN = 200 GeV. Phys. Rev. C, 75(024909), [83] M. Bourquin and J.-M. Gaillard. A simple phenomenological description of hadron production. Nucl. Phys., B114:334, [84] S. Adler et al. Centrality dependence of π 0 and η production at large transverse momentum in s NN = 200 GeV d + Au collisions. Phys. Rev. Lett., 98(172302), 2007.

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